Water quality evaluation of subtropical water source reservoir using water quality index method

被引:0
|
作者
Ye Y. [1 ]
Chen F. [2 ]
Huang T. [2 ]
机构
[1] Shenzhen North Water Source Engineering Administrative Department, Shenzhen
[2] School of Environment and Municipal Engineering, Xi’an University of Architecture and Technology, Xi’an
关键词
Pollution indictors; Water quality evaluation; Water quality index; Water source reservoir; Xikeng Reservoir;
D O I
10.3880/j.issn.1004-6933.2022.06.016
中图分类号
学科分类号
摘要
To investigate the water quality status of the Xikeng Reservoir, a subtropical water source reservoir, monthly monitoring of the water quality in the reservoir was conducted from January 2016 to December 2020, so as to obtain the changing trends of 13 indictors, including pH value, permanganate index, biochemical oxygen demand for five days, fecal E. coli, ammonia nitrogen, nitrate nitrogen, total nitrogen, total phosphorus, sulfate, chloride, fluoride, iron, and manganese. The water quality index (WQI) was calculated to evaluate the water quality status, and the WQI model was optimized based on multiple linear regression. The results show that the reservoir water quality is generally good, the pH value and permanganate index exceed the standard in some periods due to the influence of phytoplankton reproduction, the mass concentration of total nitrogen is relatively high, the mass concentration of total phosphorus and number of fecal E. coli groups are high in some periods, and the uptrend of iron mass concentration should be paid much attention; it is difficult to fully reflect the impact of stratification on water quality only through surface monitoring, therefore, monitoring along the vertical direction should be used to fully obtain the water quality risk of the reservoir; the WQI model composed of main indictors, including total phosphorus, iron, permanganate index, ammonia nitrogen, and nitrate nitrogen, is an effective tool for water quality assessment and management. © 2022, Editorial Board of Water Resources Protection. All rights reserved.
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页码:116 / 124
页数:8
相关论文
共 32 条
  • [11] DE ANDRADE COSTA D, DE AZEVEDO J P S, DOS SANTOS M A, Et al., Water quality assessment based on multivariate statistics and water quality index of a strategic river in the Brazilian Atlantic Forest[J], Scientific Reports, 10, 1, (2020)
  • [12] SAHA A, RAMYA V L, JESNA P K, Et al., Evaluation of spatio-temporal changes in surface water quality and their suitability for designated uses, Mettur Reservoir, India[J], Natural Resources Research, 30, 2, pp. 1367-1394, (2021)
  • [13] NONG Xizhi, SHAO Dongguo, ZHONG Hua, Et al., Evaluation of water quality in the South-to-North Water Diversion Project of China using the water quality index (WQI) method[J], Water Research, 178, (2020)
  • [14] WU Zhaoshi, WANG Xiaolong, CHEN Yuwei, Et al., Assessing river water quality using water quality index in Lake Taihu Basin, China[J], Science of the Total Environment, 612, pp. 914-922, (2018)
  • [15] WU Zhaoshi, LAI Xijun, LI Kuanyi, Water quality assessment of rivers in Lake Chaohu Basin (China) using water quality index[J], Ecological Indicators, 121, (2021)
  • [16] YANG Ying, WANG Yan, HUANG Wenhui, Et al., Statistical regression analysis of water-bloom algaes and related environment factors of a reservoir in Shenzhen City[J], Journal of Water Resources Research, 5, 1, pp. 33-39, (2016)
  • [17] CHEN Liguang, LIN Qiuqi, HAN Boping, Dynamics and community structure of rotifers in Xikeng Reservoir, South China[J], Journal of Hydroecology, 34, 6, pp. 27-33, (2013)
  • [18] LIANG Zhihong, CHEN Xiuhong, LUO Huan, Et al., Spatio-temporal distribution characteristics of water quality in Shenzhen Bay and pollution source analysis[J], Water Resources Protection, 36, 4, pp. 93-99, (2020)
  • [19] FLORES J C., Comments to the use of water quality indices to verify the impact of Córdoba City (Argentina) on Suqía River[J], Water Research, 36, 18, pp. 4664-4666, (2002)
  • [20] ZENG Qinghui, QIN Lihuan, CHENG Peng, Et al., Spatial and temporal distribution of main aquatic environment factors in Miyun Reservoir, Beijing since 1990s[J], Journal of Lake Sciences, 28, 6, pp. 1204-1216, (2016)